System and method for transferring data to an electronic device
Summary by NHIP
RFID Tag with Removable Materials
The RFID tag conceals data using removable materials that disable the device when present. An oscillator and frequency detector detect removal by measuring changes in oscillation frequency.
Claim Score by NHIP
Abstract
A radio frequency identification (RF ID) tag (202) and a method for communicating data from an RF ID card to an electronic device (102) are disclosed. The RF ID tag comprises one or more removable materials that conceal the data (106). The presence of the one or more removable materials disables the RF ID tag.

Term
Term ended
Expired 10 February 2026, 0.6 years ago.
- Priority and filed
- Granted
- Expired
- Today
15 claims: 3 independent, 12 dependent
- 1Broadest claimClaim Score 77, broad(NHIP)A radio frequency identification (RFID) tag comprising:one or more removable materials concealing data, wherein the presence of the one or more removable materials disables the RFID tag;and an electrostatic detector, comprising: an oscillator;and a frequency detector, wherein frequency of oscillation of the oscillator changes on removing the one or more removable materials.
- 7A radio frequency identification (RF ID) card capable of multiple operation modes, the RF ID card comprising:an authorization code concealed by one or more removable materials, wherein the authorization code is for use in a first operation mode comprising authorizing communication between the RF ID card and an electronic device;and a radio frequency identification (RF ID) communication means for use in a second operation mode, wherein the presence of the one or more removable materials disables the RF ID communication means.
- 14A method of communicating data from a radio frequency identification (RF ID) card to an electronic device, wherein an authorization code is concealed using one or more removable materials, the electronic device comprising an RF ID reader, the method comprising:removing the one or more removable materials;determining whether an RF ID mode is selected;communicating between the electronic device and the RF ID card when the RF ID mode is selected;and manually transferring the authorization code to the electronic device when the RF ID mode is not selected.
Independent claims3
31 paragraphs in 4 sections, as filed
FIELD OF THE INVENTION
0001This invention relates in general to radio frequency identification (RF ID) tags, and more specifically to RF ID cards for transferring data to electronic devices.
BACKGROUND
0002People are generally not comfortable purchasing intangible products, such as digital content or digital rights unless the purchase is accompanied by a physical object. As a result, many people prefer to buy packaged computer software. Nowadays, prepaid cards are used to transfer data, such as digital content and digital rights to electronic devices. Examples of such data include, but are not limited to, an authorization code, a song or a video.
0003A known method utilized for the transfer of data using prepaid cards involves manual transfer of data. Manual transfer involves scratching a prepaid card to reveal a code. The code can then be entered by means of a keypad of an electronic device. In the case of purchasing mobile telephone air-time, this is followed by an over-the-air transfer, and a confirmation notification to the end user of successful transfer of the data. Although accurate, a manual transfer of data from the prepaid card to the electronic device, especially entering the prepaid code in the electronic device by using the keypad, is a cumbersome process.
0004Another known method for transferring data to an electronic device is by using a radio frequency identification (RF ID) tag within a prepaid card. An RF ID reader in the electronic device is used to scan the RF ID tag in the prepaid card to automatically transfer the data to the electronic device. One problem with the implementation of this method is that since an RF ID tag can be remotely detected, the possibility of theft of data increases, since it can be remotely accessed without purchasing and using a prepaid card.
BRIEF DESCRIPTION OF THE FIGURES
0005The accompanying figures, where like reference numerals refer to identical or functionally similar elements throughout the separate views and which together with the detailed description below are incorporated in and form part of the specification, serve to further illustrate various embodiments and to explain various principles and advantages all in accordance with the present invention.
0006<figref idref="DRAWINGS">FIG. 1</figref> illustrates an exemplary environment, in accordance with some embodiments of the present invention.
0007<figref idref="DRAWINGS">FIG. 2</figref> illustrates an exemplary radio frequency identification (RF ID) tag, in accordance with one embodiment of the present invention.
0008<figref idref="DRAWINGS">FIG. 3</figref> illustrates an RF ID card, in accordance with one embodiment of the present invention.
0009<figref idref="DRAWINGS">FIG. 4</figref> illustrates an RF ID card, in accordance with one embodiment of the present invention.
0010<figref idref="DRAWINGS">FIG. 5</figref> is a flowchart illustrating a method for communicating data from an RF ID card to an electronic device, in accordance with some embodiments of the present invention.
0011Skilled artisans will appreciate that elements in the figures are illustrated for simplicity and clarity and have not necessarily been drawn to scale. For example, the dimensions of some of the elements in the figures may be exaggerated relative to other elements to help to improve understanding of embodiments of the present invention.
DETAILED DESCRIPTION
0012In an embodiment of the present invention, a system and method for transferring data to an electronic device is disclosed. An RF ID tag within the system includes one or more removable materials. The one or more removable materials conceal data. The presence of the one or more removable materials disables the RF ID tag.
0013Before describing in detail the particular system and method for transferring data to an electronic device in accordance with the present invention, it should be observed that the present invention resides primarily in combinations of method steps and apparatus components related to a system and method for transferring data to an electronic device. Accordingly, the apparatus components and method steps have been represented where appropriate by conventional symbols in the drawings, showing only those specific details that are pertinent to understanding the present invention so as not to obscure the disclosure with details that will be readily apparent to those of ordinary skill in the art having the benefit of the description herein.
0014In this document, the terms “comprises,” “comprising,” or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element preceded by “comprises . . . a” or “comprising . . . a”, does not, without more constraints, preclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.
0015A “set” as used in this document, means a non-empty set (i.e., comprising at least one member). The term “another”, as used herein, is defined as at least a second or more. The terms “including” and/or “having”, as used herein, are defined as comprising. The term “coupled”, as used herein with reference to electro-optical technology, is defined as connected, although not necessarily directly, and not necessarily mechanically.
0016<figref idref="DRAWINGS">FIG. 1</figref> illustrates an exemplary environment, in accordance with some embodiments of the present invention. The exemplary environment includes an electronic device <b>102</b> and a data card <b>104</b>. Examples of the electronic device <b>102</b> include, but are not limited to, a mobile telephone, a personal digital assistant (PDA), an MPEG-1 (Motion Pictures Experts Group) Audio Layer 3 (MP3) player and the like. The data card <b>104</b> includes one or more data <b>106</b>, which can be transferred from the data card <b>104</b> to the electronic device <b>102</b>. The data <b>106</b> is stored on the data card <b>104</b> in an electronic format. Examples of the data <b>106</b> include, but are not limited to, an authorization code, a song, a video and the like. In an embodiment of the present invention, the data card <b>104</b> is used for purchasing prepaid airtime and/or recharging a prepaid airtime balance in a mobile telephone.
0017In an embodiment of the present invention, the data <b>106</b> is transferred to the electronic device <b>102</b> by entering the data <b>106</b> manually, using a keypad of the electronic device <b>102</b>. In another embodiment of the present invention, the data <b>106</b> is automatically transferred to the electronic device <b>102</b>. The automatic transfer can be accomplished by using a wireless communication medium, such as a radio frequency identification (RF ID) tag in the data card <b>104</b>, and an RF ID reader in the electronic device <b>102</b>.
0018<figref idref="DRAWINGS">FIG. 2</figref> illustrates an exemplary RF ID tag <b>202</b>, in accordance with an embodiment of the present invention. The RF ID tag <b>202</b>, for example, can be included within the data card <b>104</b> of <figref idref="DRAWINGS">FIG. 1</figref>. The RF ID tag <b>202</b> includes a removable material <b>204</b> concealing the data <b>106</b>. In an embodiment of the present invention, more than one removable material concealing different data may be present. The presence of the removable material <b>204</b> disables the RF ID tag <b>202</b>. On removal of the one or more removable materials, the RF ID tag <b>202</b> is enabled, allowing the automatic transfer of the data <b>106</b> (for example, from the data card <b>104</b>) to the electronic device <b>102</b>. Exemplary methods of removing the removable material <b>204</b> include using an object to scratch the removable material <b>204</b>.
0019<figref idref="DRAWINGS">FIG. 3</figref> illustrates an example of an RF ID card <b>302</b>, in accordance with one embodiment of the present invention. The RF ID card <b>302</b> includes one or more removable materials, such as removable material <b>204</b>, and an RF ID communication means <b>304</b>. The RF ID communication means <b>304</b> includes a memory module <b>306</b>, a transceiver <b>308</b>, a power source <b>310</b>, and an RF ID antenna <b>312</b>. The RF ID card <b>302</b> further includes an electrostatic detector <b>314</b>.
0020The RF ID card <b>302</b> can operate in multiple operation modes. In a first operation mode, the data <b>106</b> can be transferred manually, for example, by using a keypad of the electronic device <b>102</b> of <figref idref="DRAWINGS">FIG. 1</figref> when connected to the RF ID card <b>302</b>. In an embodiment of the present invention, the data <b>106</b> can be an authorization code concealed by one or more removable materials.
0021In a second operation mode, the RF ID communication means <b>304</b> can be used for the automatic transfer of the data <b>106</b>, for example, to the electronic device <b>102</b> of <figref idref="DRAWINGS">FIG. 1</figref> via a wireless communication channel. The memory module <b>306</b> in the RF ID communication means <b>304</b> stores the data <b>106</b>, and can also store other additional information. The RF ID transceiver <b>308</b> receives and responds to radio frequency signals received from the RF ID reader in the electronic device <b>102</b>. The RF ID transceiver <b>308</b> transfers the data <b>106</b>, stored in the memory module <b>306</b>, when requested by the RF ID reader on the activation of the RF ID card <b>302</b>. The power source <b>310</b> supplies power to the memory module <b>306</b>, the RF ID transceiver <b>308</b>, and the electrostatic detector <b>314</b>. In an embodiment of the present invention, the power source <b>310</b> is a battery, as in an active RF ID tag. In another embodiment of the present invention, the power source <b>310</b> is a signal rectifier, for rectifying the signal received in the RF ID antenna <b>312</b>, as in a passive RF ID tag.
0022In an embodiment of the present invention, the RF ID card <b>302</b> is suitable for operation in the first operation mode as well as the second operation mode.
0023The electrostatic detector <b>314</b> includes an oscillator <b>316</b> and a frequency detector <b>318</b>. The frequency detector <b>318</b> detects variation in the frequency of the oscillator <b>316</b>. In an embodiment of the present invention, the frequency of oscillation of the oscillator <b>316</b> depends on impedance between terminals <b>320</b> and <b>322</b>. The terminals <b>320</b> and <b>322</b> are conductive plates connected to the electrostatic detector <b>314</b>. In an embodiment of the present invention, the RF ID card <b>302</b> can be configured so that the impedance between the terminals <b>320</b> and <b>322</b> depends on the presence of the removable material <b>204</b> in proximity to the terminals <b>320</b> and <b>322</b>. In an embodiment of the present invention, there is more than one removable material capacitively coupled with more than one pair of terminals. In an embodiment of the present invention, the removable material <b>204</b> is a conductive material capacitively coupled to terminals <b>320</b> and <b>322</b>, and the removal of the removable material <b>204</b> thereby causes a reduction in the capacitance between the terminals <b>320</b> and <b>322</b>. In another embodiment of the present invention, the one or more removable materials are non-conductive materials. Examples of the non-conductive materials include, but are not limited to, a dielectric material, a magnetically permeable material, and the like. In another embodiment, the removable material <b>204</b> is a dielectric material in close proximity to terminals <b>320</b> and <b>322</b>, and the removal of the removable material <b>204</b> thereby causes a reduction in the capacitance between the terminals <b>320</b> and <b>322</b>. Whenever the one or more removable materials are removed or scratched, the frequency of the oscillator <b>316</b> changes. The variation in the frequency of the oscillator <b>316</b> is detected by the frequency detector <b>318</b>, which, in turn, enables the RF ID communication means <b>304</b>. The enabling of the RF ID communication means <b>304</b> allows the transfer of the data <b>106</b> from the RF ID card <b>302</b> to the electronic device <b>102</b>. In an embodiment of the present invention, the oscillator <b>316</b> does not oscillate until the one or more removable materials are removed. In another embodiment of the present invention, the electrostatic detector <b>314</b> generates a data selection signal indicating which of the more than one pair of terminals has had its impedance altered by the removal of removable material <b>204</b>. The data selection signal is connected to the memory module <b>306</b>, in order to transfer the particular data <b>106</b> stored in the memory module <b>306</b>, and concealed by the removable material <b>204</b> that is removed.
0024<figref idref="DRAWINGS">FIG. 4</figref> illustrates the RF ID card <b>302</b>, in accordance with one embodiment of the present invention. The RF ID card <b>302</b> includes the one or more removable materials, the RF ID communication means <b>304</b>, and a ground terminal <b>402</b>. The RF ID communication means <b>304</b> includes a memory module <b>306</b>, an RF ID transceiver <b>308</b>, and a power source <b>310</b>.
0025In an embodiment of the present invention, the RF ID communication means <b>304</b> can be enabled by contacting a logic input in the RF ID communication means <b>304</b>, which causes the memory module <b>306</b>, the RF ID transceiver <b>308</b>, or the power source <b>310</b> to be enabled or disabled. The presence of the one or more removable materials disables the RF ID card <b>302</b>. In an embodiment of the present invention, the one or more removable materials are electrically conductive materials contacting the pair of terminals <b>320</b> and <b>322</b>. Examples of the electrically conductive materials include, but are not limited to, a conductive ink, a conductive tape, a conductive foil, and the like. The conductive material completes a circuit between the RF ID transceiver <b>308</b> and the ground terminal <b>402</b>. This sends a logical input 0, or a DISABLE signal, to the RF ID transceiver <b>308</b>. However, when the conductive material is removed, the circuit breaks and a logic signal 1, or an ENABLE signal, is sent to the RF ID transceiver <b>308</b>, which activates the RF ID card <b>302</b> for transferring the data <b>106</b> stored in the memory module <b>306</b>, and concealed by the removable material <b>204</b> that is removed.
0026<figref idref="DRAWINGS">FIG. 5</figref> is a flowchart illustrating a method for communicating the data <b>106</b> from the RF ID card <b>302</b> to the electronic device <b>102</b>, in accordance with some embodiments of the present invention. At step <b>502</b>, one or more removable materials are removed or scratched. At step <b>504</b>, it is determined whether the RF ID mode is selected at the electronic device <b>102</b>. In an embodiment of the present invention, the selection is accomplished by activating the RFID reader in the electronic device <b>102</b>. If, for example the data card <b>104</b> is used for replenishing airtime minutes, the activation may be a menu option in an airtime replenishment program running on the electronic device <b>102</b>. The activation could be specific to the purpose of the data card <b>104</b> as in the previous example, or it could be a generic activation. In the case of the generic activation, the data <b>106</b> contains an identifying sequence to be used by the electronic device <b>102</b> for identifying the purpose of the data. In an embodiment of the present invention, the identifying sequence is a prearranged code for selecting among prearranged programs for running on the electronic device <b>102</b>. In another embodiment of the present invention, the identifying sequence is a command sequence; such as an AT command sequence, for controlling the electronic device <b>102</b>. In an embodiment of the present invention, if the RF ID mode is selected, a signal is sent from the electronic device <b>102</b> to the RFID card <b>302</b>, indicating a request to transfer the data <b>106</b>. The signal from the electronic device <b>102</b> to the RFID card <b>302</b> is thereby a data transfer initiation signal. If the removable material <b>204</b> has been removed, the RFID communication means <b>304</b> is enabled and the data is transferred from the RFID card <b>302</b> to the electronic device <b>102</b>. The RF ID mode is thereby enabled in response to the removal of one or more removable materials. At step <b>506</b>, a communication between the electronic device <b>102</b> and the RF ID card <b>302</b> is enabled. However, if the RF ID mode is not selected on the electronic device <b>102</b>, then the authorization code, made visible by removing the material <b>204</b>, may be manually entered into the electronic device <b>102</b> via a keypad at step <b>508</b>.
0027In an embodiment of the present invention, the data <b>106</b> communicated from the RF ID card <b>302</b> to the electronic device <b>102</b> is a song or a video that is transferred to the electronic device <b>102</b> via the RF ID card <b>304</b>. The transfer can be accomplished by direct transfer of the data <b>106</b>, or by transfer of a network address such as a URL and a pass code.
0028In another embodiment of the present invention, transfer of the data <b>106</b> takes place in more than one step. For example, the RF ID card <b>302</b> can perform one function before the activation of the RF ID communication means <b>304</b>, and a second function after the activation. In other words, in a pre-activated state, the RF ID card <b>302</b> can provide information about a service. After the activation of the RF ID communication means <b>304</b>, the RF ID card <b>302</b> can transfer data related to the service to the electronic device <b>102</b>. For example, when purchasing music or videos, the RF ID card <b>302</b>, in a pre-activated state, can provide information regarding the preview and/or limited digital rights. After the RF ID communication means <b>304</b> is activated, it can provide a pass code to download the entire song and digital rights information.
0029It will be appreciated the system and method described herein may be comprised of one or more conventional processors and unique stored program instructions that control the one or more processors to implement, in conjunction with certain non-processor circuits, some, most, or all of the functions of the system and method described herein. The non-processor circuits may include, but are not limited to, a radio receiver, a radio transmitter, signal drivers, clock circuits, power source circuits, and user input devices. As such, these functions may be interpreted as steps of a method to transfer data to an electronic device. Alternatively, some or all functions could be implemented by a state machine that has no stored program instructions, or in one or more application specific integrated circuits (ASICs), in which each function or some combinations of certain of the functions are implemented as custom logic. Of course, a combination of the two approaches could be used. Thus, methods and means for these functions have been described herein.
0030It is expected that one of ordinary skill, notwithstanding possibly significant effort and many design choices motivated by, for example, available time, current technology, and economic considerations, when guided by the concepts and principles disclosed herein will be readily capable of generating such software instructions and programs and ICs with minimal experimentation.
0031In the foregoing specification, the invention and its benefits and advantages have been described with reference to specific embodiments. However, one of ordinary skill in the art appreciates that various modifications and changes can be made without departing from the scope of the present invention as set forth in the claims below. Accordingly, the specification and figures are to be regarded in an illustrative rather than a restrictive sense, and all such modifications are intended to be included within the scope of present invention. The benefits, advantages, solutions to problems, and any element(s) that may cause any benefit, advantage, or solution to occur or become more pronounced are not to be construed as a critical, required, or essential features or elements of any or all the claims. The invention is defined solely by the appended claims including any amendments made during the pendency of this application and all equivalents of those claims as issued.
Contents4
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2 priority claims, no other members on record
Priority claims2
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Numbers
- Publication
- 07345586
- Publication, DOCDB
- 7345586
- Publication, EPODOC
- US7345586
- Application
- 11170422
- Application, DOCDB
- 17042205
- Application, EPODOC
- US20050170422
Titles
- English
- System and method for transferring data to an electronic device
Patent term adjustment
- A delay
- +226 daysthe office missed an examination deadline
- Net adjustment
- 226 days
Classification
- CPC, 3
- G06K19/0723
- G06K19/07726
- G08B13/2417
- IPC, 1
- G08B13 14
- USPC, 3
- 340572300
- 340005400
- 340010510